CN213248882U - Energy-saving cleaning equipment capable of providing hot water by utilizing air energy - Google Patents

Energy-saving cleaning equipment capable of providing hot water by utilizing air energy Download PDF

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Publication number
CN213248882U
CN213248882U CN202021703101.2U CN202021703101U CN213248882U CN 213248882 U CN213248882 U CN 213248882U CN 202021703101 U CN202021703101 U CN 202021703101U CN 213248882 U CN213248882 U CN 213248882U
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water
energy
storage tank
air
hot water
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CN202021703101.2U
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刘东亚
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Shanghai Feiqu Technology Co ltd
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Jiaquan Technology Shanghai Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B40/00Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers

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Abstract

The utility model provides an utilize air can provide energy-conserving cleaning equipment of hot water, energy-conserving cleaning equipment is provided with the jetter, and this washs a set of utensil and includes: the air energy water heater is used for heating city water and delivering constant-temperature hot water; the water storage tank is connected with the air energy water heater and the sprayer through a water inlet pipeline and a water outlet pipeline respectively, a liquid level sensor and a temperature sensor are arranged in each water storage tank, a heating coil is further arranged in the first water storage tank, and a waste water discharge pipeline is further configured in the second water storage tank. The utility model discloses rely on the air to carry out secondary heating again on the basis of ability hot water, it is lower to the heating requirement, and heating efficiency is faster to reach energy-conserving effect, the simultaneous control logic is reasonable, is favorable to the lifting thermal efficiency of new step.

Description

Energy-saving cleaning equipment capable of providing hot water by utilizing air energy
Technical Field
The utility model relates to a dish washer, concretely relates to utilize energy-conserving cleaning equipment that air can provide hot water.
Background
The dish washer is the equipment that washs after using tableware, and the disinfection function of current cleaning equipment mostly adopts the abluent mode of high temperature hot water, and its working process is: and (3) introducing the city water into a heating box, heating the city water to be used as cleaning water, and then discharging the city water. In order to match with the high-requirement cleaning speed, the water needs to be heated to a high temperature at the fastest speed, the requirement on heating power is very high, the installation and use environment is very difficult due to the requirement on high power, and the difficulty is that how to reduce the power of the equipment makes the cleaning equipment be universally installed and used.
SUMMERY OF THE UTILITY MODEL
The utility model provides a pair of rely on energy-conserving cleaning equipment of intelligence that air can intake, municipal running water lets in the air and can heat the back, can produce even 50 ℃ -60 ℃ hot water, relies on the air can carry out secondary heating again on the hot water basis, requires lowerly to the heating, and heating efficiency is faster, when reaching energy-conserving effect, lets the use installation universality of cleaning equipment become a possibility.
An energy-saving cleaning apparatus using air energy to provide hot water, the energy-saving cleaning apparatus being provided with a cleaning table in which a spray device is disposed, and a downward sprayer is disposed above the cleaning table, the energy-saving cleaning apparatus comprising:
the air energy water heater is used for heating the city water and outputting constant-temperature hot water at 50-60 ℃;
the first water storage tank is connected with a water outlet of the air energy water heater through a first water inlet pipeline, a first water inlet electromagnetic valve is arranged on the first water inlet pipeline, a heating coil, a first liquid level sensor and a first temperature sensor are arranged in the first water storage tank, the first water storage tank is provided with a first water outlet pump, and the first water outlet pump is connected with the spray washing device and the sprayer through a first water outlet pipeline;
the second storage water tank, through the second inlet channel with the air can the water heater delivery port link to each other, is provided with the second solenoid valve of intaking on the second inlet channel, is provided with second level sensor and second temperature sensor in first storage water tank, the second storage water tank disposes the second and goes out the water pump, the second goes out the water pump and links to each other with jetter and spray thrower through second outlet channel, has seted up hot water recovery mouth in wash stand one side bottom, the second storage water tank passes through hot water recovery pipeline and links to each other with hot water recovery mouth, the second storage water tank disposes waste water discharge pipeline, disposes waste water discharge solenoid valve on waste water discharge pipeline.
Furthermore, a main control unit is arranged in the energy-saving cleaning equipment and comprises a main control CPU and a control panel embedded on the outer surface of the energy-saving cleaning equipment, and the main control CPU is electrically connected with the air energy water heater, the first water inlet electromagnetic valve, the heating coil, the first liquid level sensor, the first temperature sensor, the first water outlet pump, the second water inlet electromagnetic valve, the second liquid level sensor, the second temperature sensor, the second water outlet pump and the wastewater discharge electromagnetic valve;
when the liquid level of the first water storage tank is high enough to trigger the first liquid level sensor, the first water inlet electromagnetic valve is closed and the second water inlet electromagnetic valve and the heating coil are opened, and when the liquid level of the second water storage tank is high enough to trigger the second liquid level sensor, the second water inlet electromagnetic valve is closed and/or the waste water discharging electromagnetic valve is opened.
Furthermore, the main control unit is also provided with a wireless communication module for remote data interaction with the cloud server.
Furthermore, the heating coil is a spiral heating copper pipe.
Furthermore, the first water inlet pipeline is provided with a section of spiral coil pipe which is positioned inside the waste water discharge pipeline.
Furthermore, an opening is formed in one side of the first water storage tank, an additive box is arranged on the outer side wall of the first water storage tank, a peristaltic pump connected with the main control unit is installed in the additive box, and an outlet of the peristaltic pump is connected with the opening.
The utility model discloses rely on the air to carry out secondary heating again on the hot water basis, it is lower to the heating requirement, and heating efficiency is faster to reach energy-conserving effect.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for the embodiments or the prior art descriptions will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without inventive labor.
Fig. 1 is a schematic structural diagram of an energy-saving cleaning device for supplying hot water by using air energy according to the present invention;
fig. 2 is a schematic connection diagram of the electronic component of the present invention.
Detailed Description
In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. It will be apparent, however, to one skilled in the art, that the present invention may be practiced without one or more of these specific details. In other instances, well-known features have not been described in order to avoid obscuring the present invention.
In order to thoroughly understand the present invention, detailed steps and detailed structures will be provided in the following description so as to explain the technical solution of the present invention. The preferred embodiments of the present invention are described in detail below, however, other embodiments of the present invention are possible in addition to these detailed descriptions.
The utility model provides an utilize energy-conserving cleaning equipment that air can provide hot water, as shown in FIG. 1, this energy-conserving cleaning equipment is provided with a clean bench 60 dispose spray rinsing device 50 in the clean bench 60, and be configured with decurrent spray thrower 40 above clean bench 60, energy-conserving cleaning equipment includes:
the air energy water heater 30 is used for heating the city water and outputting constant-temperature hot water at 50-60 ℃;
the first water storage tank 10 is connected with a water outlet of the air energy water heater 30 through a first water inlet pipeline 11, a first water inlet electromagnetic valve 12 is arranged on the first water inlet pipeline 11, a heating coil 13, a first liquid level sensor 14 and a first temperature sensor 15 are arranged in the first water storage tank 10, the first water storage tank 10 is provided with a first water outlet pump 16, and the first water outlet pump 16 is connected with a spray washing device 50 and a sprayer 40 through a first water outlet pipeline 17;
second storage water tank 20, through second inlet channel 21 with the air can water heater 30 delivery port link to each other, is provided with second water inlet solenoid valve 22 on second inlet channel 21, is provided with second level sensor 24 and second temperature sensor 25 in first storage water tank 10, second storage water tank 20 disposes second outlet pump 26, second outlet pump 26 links to each other with jetter 50 and shower 40 through second outlet channel 27, has seted up the hot water recovery mouth in wash platform 60 one side bottom, second storage water tank 20 links to each other with the hot water recovery mouth through the hot water recovery pipeline, second storage water tank 20 disposes waste water discharge pipeline 29, disposes waste water discharge solenoid valve 28 on waste water discharge pipeline 29.
Preferably, the second storage tank 20 is located right below the washing station 60, and the wastewater of the washing station 60 automatically flows into the second storage tank 20 under the gravity.
In an optional embodiment, a main control unit 70 is built in the energy-saving cleaning device, the main control unit 70 includes a main control CPU71 and a control panel 72 embedded on an outer surface of the energy-saving cleaning device, the main control CPU71 is electrically connected to the air energy water heater 30, the first water inlet electromagnetic valve 12, the heating coil 13, the first liquid level sensor 14, the first temperature sensor 15, the first water outlet pump 16, the second water inlet electromagnetic valve 22, the second liquid level sensor 24, the second temperature sensor 25, the second water outlet pump 26 and the wastewater discharge electromagnetic valve 28; when the liquid level of the first water storage tank 10 is high enough to trigger the first liquid level sensor 14, the first water inlet electromagnetic valve 12 is closed and the second water inlet electromagnetic valve 22 and the heating coil 13 are opened, and when the liquid level of the second water storage tank 20 is high enough to trigger the second liquid level sensor 24 to close the second water inlet electromagnetic valve 22 and/or open the waste water discharge electromagnetic valve 28. In practice, the control logic can be realized by burning a corresponding control program in a single chip microcomputer including the main control CPU71, which is not described in detail.
In an optional embodiment, the main control unit 70 is further provided with a wireless communication module 73 for performing remote data interaction with the cloud server, and preferably, the wireless communication module is a wireless communication module based on 4G/WIFI/bluetooth.
In an alternative embodiment, the heating coil 13 is a spiral heating copper tube to improve heating efficiency.
In an alternative embodiment, the first inlet line 11 is provided with a copper spiral coil 110 inside the waste water discharge line 29. In order to ensure the sterilization effect during cleaning, the water temperature is far higher than 50-60 ℃, if the second water storage tank 20 is full of directly discharged wastewater, hot water heat can be wasted, one section of copper spiral coil 110 of the first water inlet pipeline 11 is arranged in the wastewater discharge pipeline 29, the discharged high-temperature hot water can be used for heating the water in the first water inlet pipeline 11, and meanwhile, the heat preservation effect can be realized on the water in the copper spiral coil 110.
The waste water heat discharged from the second water storage tank 20 can be utilized to heat the water in the first water inlet pipeline 11, thereby increasing the temperature of the water delivered to the first water storage tank 10.
In an alternative embodiment, an opening is formed in one side of the first water storage tank 10, an additive box 18 is arranged on the outer side wall of the first water storage tank 10, a peristaltic pump 19 is arranged in the additive box 18, an outlet of the peristaltic pump 19 is connected with the opening, and liquid such as detergent or water softener is stored in the additive box 18 and is delivered to the first water storage tank 10 through the peristaltic pump 19 as required.
The working process of the utility model is as follows:
1) a cleaning preparation stage:
after the cleaning equipment is powered on and is manually or remotely operated for cleaning, the equipment is controlled by a master control CPU71, a first water inlet electromagnetic valve 12 is opened, air energy hot water is introduced into a first water storage tank 10 until a first liquid level sensor 14 judges a high liquid level, then the first water inlet electromagnetic valve 12 is closed, and meanwhile, a heating coil 13 is started to increase the water temperature to a preset high water temperature, and then the heating coil 13 is closed; and opening the second water inlet electromagnetic valve 22 to introduce air energy hot water into the second water storage tank 20 until the second liquid level sensor 24 judges that the liquid level is high, and then closing the second water inlet electromagnetic valve 22 to finish water inlet.
2) And (3) a tableware cleaning stage:
after the equipment finishes the cleaning preparation stage, time and temperature are set according to a set program, a second water outlet pump 26 is started to basically clean tableware, water still flows back to a second water storage tank 20 after cleaning, after the basic cleaning is finished according to the set time, the second water outlet pump 26 is closed, a first water outlet pump 16 is started to carry out high-temperature cleaning, high-temperature cleaning water flows to the second water storage tank 20, a waste water discharge electromagnetic valve 28 is opened simultaneously to discharge redundant waste water, after the high-temperature cleaning is finished according to the set time, the first water outlet pump 16 is closed, the cleaning is finished at this time, and next cleaning preparation is carried out.
After the cleaning is finished, the CPU judges the water level height of the second water storage tank 20 through the liquid level second liquid level sensor 24, continues to drain water during high water level, and closes the wastewater draining electromagnetic valve 28 when the CPU discharges water to leave the high liquid level, and opens the second water inlet electromagnetic valve 22 to replenish water to the second water storage tank 20 until the second liquid level sensor 24 judges that the second water storage tank 20 is at the high liquid level, so that the second water inlet electromagnetic valve 22 can be closed, and the cleaning is finished.
The utility model has the advantages that:
(1) the cleaning equipment is characterized in that the water inlet of the cleaning equipment is an air energy water source, the water inlet temperature is high, basic cleaning can be directly carried out, the secondary heating speed is high, the high water temperature heating requirement can be met without a higher power supply and power, and the cleaning equipment is not only energy-saving, but also low in voltage and low in power, so that the cleaning equipment can be installed in various environments.
(2) The cleaning equipment only needs the first water tank to heat with low power, and the second water tank only depends on air to change water source to keep the required temperature, so as to achieve the effect of more energy conservation and environmental protection.
(3) The temperature sensor and the liquid level sensor which are positioned on the first water storage tank and the second water storage tank are monitored in real time, so that the rear part of the water tank can be cleaned after the temperature and the water amount required by cleaning are ensured to meet the actual requirement, and the problem that the water tank is not cleaned completely is avoided.
(4) Whole intaking, heating, washing, drainage action are controlled by master control CPU in unison, and the control button that CPU control electric box configuration control circuit links to each other makes things convenient for manual operation, disposes communication module in addition, and the customer logs on and removes the end, and wireless connection machine can carry out remote operation, convenient and fast.
(5) The first water inlet pipeline is provided with one section of spiral coil pipe which is positioned inside the wastewater discharge pipeline, and the temperature of water in the first water inlet pipeline can be increased by utilizing the wastewater heat discharged by the second water storage tank, so that the water temperature conveyed to the first water storage tank is improved, the energy consumption is further saved, and the water heating efficiency in the first water storage tank is improved.
(6) The first water storage tank is provided with an automatic detergent adding device, and corresponding detergent or softener can be automatically added into the first water storage tank according to a set program without manual addition.
The above description is directed to the preferred embodiment of the present invention. It is to be understood that the invention is not limited to the particular embodiments described above, and that devices and structures not described in detail are understood to be implemented in a manner common in the art; without departing from the scope of the invention, it is intended that the present invention shall not be limited to the above-described embodiments, but that the present invention shall include all the modifications and variations of the embodiments. Therefore, any simple modification, equivalent change and modification made to the above embodiments by the technical entity of the present invention all still fall within the protection scope of the technical solution of the present invention, where the technical entity does not depart from the content of the technical solution of the present invention.

Claims (6)

1. An energy-saving cleaning equipment capable of providing hot water by utilizing air, which is provided with a cleaning table, wherein a spray-washing device is arranged in the cleaning table, and a downward sprayer is arranged above the cleaning table, and is characterized in that the energy-saving cleaning equipment comprises:
the air energy water heater is used for heating the city water and outputting constant-temperature hot water;
the first water storage tank is connected with a water outlet of the air energy water heater through a first water inlet pipeline, a first water inlet electromagnetic valve is arranged on the first water inlet pipeline, a heating coil, a first liquid level sensor and a first temperature sensor are arranged in the first water storage tank, the first water storage tank is provided with a first water outlet pump, and the first water outlet pump is connected with the spray washing device and the sprayer through a first water outlet pipeline;
the second storage water tank, through the second inlet channel with the air can the water heater delivery port link to each other, is provided with the second solenoid valve of intaking on the second inlet channel, is provided with second level sensor and second temperature sensor in first storage water tank, the second storage water tank disposes the second and goes out the water pump, the second goes out the water pump and links to each other with jetter and spray thrower through second outlet channel, has seted up hot water recovery mouth in wash stand one side bottom, the second storage water tank passes through hot water recovery pipeline and links to each other with hot water recovery mouth, the second storage water tank disposes waste water discharge pipeline, disposes waste water discharge solenoid valve on waste water discharge pipeline.
2. The energy-saving cleaning device for supplying hot water by using air energy as claimed in claim 1, wherein a main control unit is arranged in the energy-saving cleaning device, the main control unit comprises a main control CPU and a control panel embedded on the outer surface of the energy-saving cleaning device, and the main control CPU is electrically connected with the air energy water heater, the first water inlet electromagnetic valve, the heating coil, the first liquid level sensor, the first temperature sensor, the first water outlet pump, the second water inlet electromagnetic valve, the second liquid level sensor, the second temperature sensor, the second water outlet pump and the wastewater discharge electromagnetic valve;
when the liquid level of the first water storage tank is high enough to trigger the first liquid level sensor, the first water inlet electromagnetic valve is closed and the second water inlet electromagnetic valve and the heating coil are opened, and when the liquid level of the second water storage tank is high enough to trigger the second liquid level sensor, the second water inlet electromagnetic valve is closed and/or the waste water discharging electromagnetic valve is opened.
3. An energy-saving air-powered hot water cleaning device as claimed in claim 2, wherein the main control unit is further provided with a wireless communication module for remote data interaction with the cloud server.
4. An energy efficient air powered hot water washer apparatus as claimed in claim 1 wherein the heating coil is a spiral heated copper tube.
5. An energy-saving air-powered hot water washing apparatus as claimed in claim 1 or 4, wherein the first water inlet line is provided with a section of spiral coil located inside the waste water discharge line.
6. An energy-saving air-powered hot water cleaning device as claimed in claim 2, wherein an opening is provided at one side of the first water storage tank, an additive box is provided at the outer side wall of the first water storage tank, a peristaltic pump connected to the main control unit is installed in the additive box, and the outlet of the peristaltic pump is connected to the opening.
CN202021703101.2U 2020-08-14 2020-08-14 Energy-saving cleaning equipment capable of providing hot water by utilizing air energy Active CN213248882U (en)

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Application Number Priority Date Filing Date Title
CN202021703101.2U CN213248882U (en) 2020-08-14 2020-08-14 Energy-saving cleaning equipment capable of providing hot water by utilizing air energy

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Application Number Priority Date Filing Date Title
CN202021703101.2U CN213248882U (en) 2020-08-14 2020-08-14 Energy-saving cleaning equipment capable of providing hot water by utilizing air energy

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113786142A (en) * 2021-10-14 2021-12-14 张远宏 Automatic dish-washing machine
CN113854922A (en) * 2021-10-14 2021-12-31 张远宏 Manual control dish washing machine

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113786142A (en) * 2021-10-14 2021-12-14 张远宏 Automatic dish-washing machine
CN113854922A (en) * 2021-10-14 2021-12-31 张远宏 Manual control dish washing machine
CN113786142B (en) * 2021-10-14 2022-12-23 张远宏 Automatic dish-washing machine

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GR01 Patent grant
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TR01 Transfer of patent right

Effective date of registration: 20221130

Address after: No. 2132, Floor 2, Building 2, No. 568, Tianyi Road, Qingpu District, Shanghai, 201700

Patentee after: Shanghai Feiqu Technology Co.,Ltd.

Address before: 201702 room 131, 1 / F, building 3, No.8, zone 3, No.228 Beiqing Road, Qingpu District, Shanghai

Patentee before: Jiaquan Technology (Shanghai) Co.,Ltd.

TR01 Transfer of patent right